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通过碳-13核磁共振光谱对蛋白质化学修饰组氨酸残基的研究。鸡蛋清溶菌酶与碘乙酸的反应。

Studies of chemically modified histidine residues of proteins by carbon 13 nuclear magnetic resonance spectroscopy. Reaction of hen egg white lysozyme with iodoacetate.

作者信息

Goux W J, Allerhand A

出版信息

J Biol Chem. 1979 Apr 10;254(7):2210-3.

PMID:34602
Abstract

It is shown that natural abundance 13C NMR spectroscopy can be used to determine the structures and relative amounts of chemically modified forms of a histidine residue of a peptide or protein. The unfractionated product of the reaction of N alpha-acetyl-L-histidine with bromoacetate yields four resonances of nonprotonated aromatic carbons. These resonances are assigned (on a one-to-one basis) to C gamma of the intact amino acid, the two monocarboxymethylated derivatives (at N delta1 and N epsilon2), and the dicarboxymethylated derivative. The effect of pH on the chemical shift of C gamma is characteristic for each of the four species. This property is used to study the carboxymethylation of His-15 of hen egg white lysozyme upon treatment with iodoacetate. With the use of various reaction conditions, His 15 is carboxymethylated in detectable quantities only at N epsilon2. The spectra of the various reaction mixtures indicate which conditions are best for maximizing the yield of this derivative. A comparison of the spectrum of chromatographically pure [N epsilon2-carboxymethylhistidine-15]lysozyme with that of the intact protein indicates that the chemical modification does not significantly affect the conformation of the protein (at least in the regions of all aromatic amino acid residues).

摘要

结果表明,天然丰度的13C核磁共振光谱可用于确定肽或蛋白质中组氨酸残基的化学修饰形式的结构和相对含量。Nα-乙酰-L-组氨酸与溴乙酸反应的未分级产物产生四个非质子化芳香碳的共振信号。这些共振信号(逐一对应)被指定为完整氨基酸的Cγ、两种单羧甲基化衍生物(在Nδ1和Nε2处)以及二羧甲基化衍生物。pH对Cγ化学位移的影响对于这四种物质中的每一种都是独特的。利用这一特性研究了用碘乙酸处理后鸡蛋清溶菌酶His-15的羧甲基化情况。在各种反应条件下,His 15仅在Nε2处被羧甲基化到可检测的量。各种反应混合物的光谱表明哪些条件最有利于使该衍生物的产率最大化。将色谱纯的[Nε2-羧甲基组氨酸-15]溶菌酶的光谱与完整蛋白质的光谱进行比较表明,化学修饰不会显著影响蛋白质的构象(至少在所有芳香族氨基酸残基的区域)。

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